most citedLiquid crystal films as on-demand, variable thickness (50-5000 nm) targets for intense lasers

36 citations · 123 across the 4 of their papers we have counts for

collaborators

4 papers

physics.plasm-ph201524 cited

Backward-propagating MeV electrons from W/cm laser interactions with water

John T. Morrison, Enam A. Chowdhury, Kyle D. Frische +6

We present an experimental study of the generation of MeV electrons opposite to the direction of laser propagation following the relativistic interaction at normal incidence…

physics.ins-det201432 cited

A Novel Femtosecond-Gated, High-Resolution, Frequency-Shifted Shearing Interferometry Technique for Probing Pre-Plasma Expansion in Ultra-Intense Laser Experiments

S. Feister, J. A. Nees, J. T. Morrison +4

Ultra-intense laser-matter interaction experiments (>10 W/cm) with dense targets are highly sensitive to the effect of laser "noise" (in the form of pre-pulses) preced…

physics.plasm-ph201436 cited

Liquid crystal films as on-demand, variable thickness (50-5000 nm) targets for intense lasers

P. L. Poole, C. D. Andereck, D. W. Schumacher +6

We have developed a new type of target for intense laser-matter experiments that offers significant advantages over those currently in use. The targets consist of a liquid crystal…

physics.plasm-ph201431 cited

Backward-Propagating MeV Electrons in Ultra-Intense Laser Interactions: Standing Wave Acceleration and Coupling to the Reflected Laser Pulse

Chris Orban, John T. Morrison, Enam D. Chowdhury +4

Laser-accelerated electron beams have been created at a kHz repetition rate from the {\it reflection} of intense ( W/cm), 40 fs laser pulses focused on a con…